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Methylated N-(4-N,N-dimethylaminobenzyl) chitosan for novel effective gene carriers.

机译:甲基化的N-(4-N,N-二甲基氨基苄基)壳聚糖用于新型有效基因载体。

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摘要

The objective of this study was to investigate the transfection efficiency of quaternized N-(4-N,N-dimethylaminobenzyl) chitosan, TM(47)-Bz(42)-CS, using the plasmid DNA encoding green fluorescent protein (pEGFP-C2) on human hepatoma cell lines (Huh7 cells), in comparison to quaternized chitosan (TM(43)-CS) and chitosan (CS). Factors affecting the transfection efficiency, such as the carrier/DNA weight ratio, the pH of the culture medium, and the presence of serum, have been investigated. The results revealed that TM(47)-Bz(42)-CS was able to condense with pDNA. As illustrated by the agarose gel electrophoresis, the complete complexes of TM(47)-Bz(42)-CS/DNA were formed at a weight ratio of above 0.5, whereas those of TM(43)-CS/DNA and CS/DNA were formed at a ratio of above 1. TM(47)-Bz(42)-CS showed superior transfection efficiency to TM(43)-CS and CS at all weight ratios tested. Higher transfection efficiency and gene expression were observed when the carrier/DNA weight ratios increased. The highest transfection efficiency was found at a weight ratio of 8. The results indicated that the improved gene transfection was due to the hydrophobic group (N,N-dimethylaminobenzyl) substitution on CS, which promoted the interaction and condensation with DNA, as well as N-quaternization, which increased the CS water solubility. During cytotoxicity studies, it was found that high concentrations of TM(47)-Bz(42)-CS and TM(43)-CS could decrease the Huh7 cell viability. In conclusion, this novel CS derivative, TM(47)-Bz(42)-CS, shows promising potential as a gene carrier by efficient DNA condensation and a mediated higher level of gene transfection in Huh7 cells.
机译:这项研究的目的是使用编码绿色荧光蛋白(pEGFP-C2)的质粒DNA研究季铵化N-(4-N,N-二甲基氨基苄基)壳聚糖TM(47)-Bz(42)-CS的转染效率与季铵化壳聚糖(TM(43)-CS)和壳聚糖(CS)相比,在人肝癌细胞系(Huh7细胞)已经研究了影响转染效率的因素,例如载体/ DNA重量比,培养基的pH值和血清的存在。结果表明,TM(47)-Bz(42)-CS能够与pDNA凝聚。如琼脂糖凝胶电泳所示,TM(47)-Bz(42)-CS / DNA的完整复合物以大于0.5的重量比形成,而TM(43)-CS / DNA和CS / DNA的复合物形成在所有测试的重量比下,TM(47)-Bz(42)-CS的转染效率均优于TM(43)-CS和CS。当载体/ DNA重量比增加时,观察到更高的转染效率和基因表达。重量比为8时,转染效率最高。结果表明,改进的基因转染归因于CS上的疏水基团(N,N-二甲基氨基苄基)取代,从而促进了与DNA的相互作用和缩合。 N-季铵化,增加CS的水溶性。在细胞毒性研究中,发现高浓度的TM(47)-Bz(42)-CS和TM(43)-CS可能会降低Huh7细胞的活力。总之,这种新型的CS衍生物TM(47)-Bz(42)-CS通过有效的DNA缩合和在Huh7细胞中介导的更高水平的基因转染,显示出有望作为基因载体的潜力。

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